Rege Aarti, Heu Rod, Stranick Michael, Sullivan Richard J
J Clin Dent. 2014;25(1 Spec No A):A3-6.
To investigate the possible mode of action of a dentifrice containing 8% arginine and calcium carbonate (Pro-Argin Technology), and sodium monofluorophosphate in delivering the benefits of preventing acid erosion and rehardening acid-softened enamel.
The surfaces of acid-softened bovine enamel specimens were evaluated after application of a dentifrice containing 8% arginine, calcium carbonate, and sodium monofluorophosphate in vitro. Scanning Electron Microscopy (SEM), Electronic Spectrometry for Chemical Analysis (ESCA), and Secondary Ion Mass Spectrometry (SIMS) were used to characterize the enamel surfaces.
Exposure of pristine enamel surfaces to citric acid resulted in clear roughening of the surface. Multiple applications of a dentifrice containing 8% arginine, calcium carbonate, and sodium monofluorophosphate to the surface of the enamel resulted in the disappearance of the microscopic voids observed by SEM as a function of treatment applications. The ESCA analysis demonstrated that both the nitrogen and carbonate levels increased as the number of treatments increased, which provides evidence that arginine and calcium carbonate were bound to the surface. Observance of arginine's signature mass fragmentation pattern by SIMS analysis confirmed the identity of arginine on the enamel surface.
A series of in vitro experiments has demonstrated a possible mode of action by which a dentifrice containing 8% arginine, calcium carbonate, and sodium monofluorophosphate delivers the benefits of preventing acid erosion and rehardening acid-softened enamel. The combination of arginine and calcium carbonate adheres to the enamel surface and helps to fill the microscopic gaps created by acid, which in turn helps repair the enamel and provides a protective coating against future acid attacks.
研究一种含有8%精氨酸、碳酸钙(Pro - Argin技术)和单氟磷酸钠的牙膏在预防酸蚀和使酸软化的牙釉质再矿化方面发挥作用的可能机制。
在体外对酸软化的牛牙釉质标本表面涂抹含有8%精氨酸、碳酸钙和单氟磷酸钠的牙膏后进行评估。使用扫描电子显微镜(SEM)、化学分析电子能谱(ESCA)和二次离子质谱(SIMS)对牙釉质表面进行表征。
将原始牙釉质表面暴露于柠檬酸会导致表面明显粗糙。向牙釉质表面多次涂抹含有8%精氨酸、碳酸钙和单氟磷酸钠的牙膏后,SEM观察到的微观孔隙随着处理次数的增加而消失。ESCA分析表明,随着处理次数的增加,氮和碳酸盐水平均升高,这证明精氨酸和碳酸钙与表面结合。通过SIMS分析观察到精氨酸的标志性质量碎片模式,证实了牙釉质表面存在精氨酸。
一系列体外实验证明了一种含有8%精氨酸、碳酸钙和单氟磷酸钠的牙膏发挥预防酸蚀和使酸软化的牙釉质再矿化作用的可能机制。精氨酸和碳酸钙的组合附着在牙釉质表面,有助于填补酸造成的微观间隙,进而有助于修复牙釉质,并提供防止未来酸侵蚀的保护涂层。